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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Partially purified bitter gourd (Momordica charantia) peroxidase catalyzed decolorization of textile and other industrially important dyes
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Partially purified bitter gourd (Momordica charantia) peroxidase catalyzed decolorization of textile and other industrially important dyes

机译:部分纯化的苦瓜(Momordica charantia)过氧化物酶催化纺织品和其他工业上重要染料的脱色

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The aim of this study was to evaluate the enzymatic action of partially purified bitter gourd peroxidase for the degradation/decolorization of complex aromatic structures. Twenty-one dyes, with a wide spectrum of chemical groups, currently being used by the textile and other important industries have been selected for the study. Here, for the first time we have shown peroxidases from Momordica charantia (300 EU/gm of vegetable) to be highly effective in decolorizing industrially important dyes. Dye solutions, containing 50-200 mg dye/I, were used for the treatment with bitter gourd peroxidase (specific activity of 99.0 EU/mg protein). M. charantia peroxidases were able to decolorize most of the textile dyes by forming insoluble precipitate. When the textile dyes were treated with increasing concentration of enzyme, it was observed that greater fraction of the color was removed but four out of eight reactive dyes were recalcitrant to decolorization by bitter gourd peroxidase. Step-wise addition of enzyme to the decolorizing reaction mixture at the interval of I h further enhanced the dye decolorization. The rate of decolorization was enhanced when the dyes were incubated with fixed quantity of enzyme for increasing times. Decolorization of non-textile dyes resulted in the degradation and removal of dyes from the solution without any precipitate formation. Decolorization rate was drastically increased when the textile and other industrially important non-textile dyes were treated with bitter gourd peroxidase in presence of 1.0 mM 1-hydroxybenzotriazole. Complex mixtures of dyes were prepared by taking three to four reactive textile and non-textile dyes in equal proportions. Each mixture was decolorized by more than 80% when treated with the enzyme in presence of 1.0 mM I-hydroxybenzotriazole. Our data suggest that the peroxidase/mediator system is an effective biocatalyst for the treatment of effluents containing recalcitrant dyes from textile, dye manufacturing, dyeing and printing industries. (c) 2005 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是评估部分纯化的苦瓜过氧化物酶对复杂芳香结构的降解/脱色的酶促作用。目前已选择了二十一种具有广泛化学基团的染料用于纺织和其他重要行业。在这里,我们首次展示了苦瓜的过氧化物酶(300 EU / gm的蔬菜)对工业上重要的染料脱色非常有效。含有50-200 mg染料/ l的染料溶液用于治疗苦瓜过氧化物酶(比活度为99.0 EU / mg蛋白)。 M. charantia过氧化物酶能够通过形成不溶性沉淀使大多数纺织品染料脱色。当用增加浓度的酶处理纺织品染料时,观察到去除了较大部分的颜色,但是八种活性染料中有四种由于苦瓜过氧化物酶而难以脱色。在1小时的间隔内将酶逐步加入到脱色反应混合物中进一步增强了染料的脱色。当将染料与固定量的酶孵育时间增加时,脱色率会提高。非纺织品染料的脱色导致染料的降解和从溶液中的去除,而没有任何沉淀的形成。当在1.0 mM 1-羟基苯并三唑存在下,用苦瓜过氧化物酶处理纺织品和其他工业上重要的非纺织染料时,脱色率大大提高。染料的复杂混合物是通过将三到四种活性纺织品和非纺织品染料以相同的比例制成的。当在1.0 mM I-羟基苯并三唑存在下用酶处理时,每种混合物的脱色率均超过80%。我们的数据表明,过氧化物酶/介体系统是一种有效的生物催化剂,用于处理纺织品,染料制造,染色和印刷工业中含有难降解染料的废水。 (c)2005 Elsevier Ltd.保留所有权利。

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